forked from kscience/visionforge
Update architecture
This commit is contained in:
parent
4865c76158
commit
d874c3cdd6
@ -9,7 +9,7 @@ buildscript {
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val dokkaVersion: String by rootProject.extra("0.9.17")
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val dokkaVersion: String by rootProject.extra("0.9.17")
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val serializationVersion: String by rootProject.extra("0.10.0")
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val serializationVersion: String by rootProject.extra("0.10.0")
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val dataforgeVersion: String by rootProject.extra("0.1.1-dev-5")
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val dataforgeVersion: String by rootProject.extra("0.1.2-dev-1")
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repositories {
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repositories {
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jcenter()
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jcenter()
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@ -40,6 +40,7 @@ allprojects {
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jcenter()
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jcenter()
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maven("https://kotlin.bintray.com/kotlinx")
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maven("https://kotlin.bintray.com/kotlinx")
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maven("http://npm.mipt.ru:8081/artifactory/gradle-dev")
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maven("http://npm.mipt.ru:8081/artifactory/gradle-dev")
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mavenLocal()
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}
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}
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group = "hep.dataforge"
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group = "hep.dataforge"
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@ -11,19 +11,19 @@ kotlin {
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sourceSets {
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sourceSets {
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val commonMain by getting {
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val commonMain by getting {
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dependencies {
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dependencies {
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api("hep.dataforge:dataforge-io:$dataforgeVersion")
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api("hep.dataforge:dataforge-output:$dataforgeVersion")
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api("hep.dataforge:dataforge-io-metadata:$dataforgeVersion")
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//api("hep.dataforge:dataforge-output-metadata:$dataforgeVersion")
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}
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}
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}
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}
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val jvmMain by getting {
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val jvmMain by getting {
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dependencies {
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dependencies {
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api("hep.dataforge:dataforge-io-jvm:$dataforgeVersion")
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api("hep.dataforge:dataforge-output-jvm:$dataforgeVersion")
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//api("no.tornado:tornadofx:1.7.18")
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//api("no.tornado:tornadofx:1.7.18")
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}
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}
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}
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}
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val jsMain by getting {
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val jsMain by getting {
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dependencies {
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dependencies {
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api("hep.dataforge:dataforge-io-js:$dataforgeVersion")
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api("hep.dataforge:dataforge-output-js:$dataforgeVersion")
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}
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}
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}
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}
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}
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}
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@ -1,12 +1,14 @@
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package hep.dataforge.vis.spatial
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package hep.dataforge.vis.spatial
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import hep.dataforge.context.Global
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import hep.dataforge.context.Global
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import hep.dataforge.context.members
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import hep.dataforge.meta.number
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import hep.dataforge.meta.number
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import hep.dataforge.meta.set
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import hep.dataforge.meta.set
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import hep.dataforge.vis.ApplicationBase
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import hep.dataforge.vis.ApplicationBase
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import hep.dataforge.vis.DisplayGroup
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import hep.dataforge.vis.DisplayGroup
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import hep.dataforge.vis.require
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import hep.dataforge.vis.require
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import hep.dataforge.vis.spatial.gdml.gdml
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import hep.dataforge.vis.spatial.jsroot.JSRootPlugin
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import hep.dataforge.vis.spatial.jsroot.jsRoot
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import kotlinx.coroutines.GlobalScope
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import kotlinx.coroutines.GlobalScope
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import kotlinx.coroutines.delay
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import kotlinx.coroutines.delay
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import kotlinx.coroutines.isActive
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import kotlinx.coroutines.isActive
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@ -22,6 +24,23 @@ class ThreeDemoApp : ApplicationBase() {
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override fun start(state: Map<String, Any>) {
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override fun start(state: Map<String, Any>) {
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require("JSRootGeoBase.js")
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require("JSRootGeoBase.js")
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//TODO remove after DI fix
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Global.plugins.load(ThreePlugin())
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Global.plugins.load(JSRootPlugin())
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// Global.plugins.load(JSRootPlugin)
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println(Global.plugins.count())
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Global.plugins.forEach {
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println(it)
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}
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Global.members<ThreeFactory<*>>(ThreeFactory.TYPE).forEach {
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println(it)
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}
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val renderer = ThreeOutput(Global)
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val renderer = ThreeOutput(Global)
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renderer.start(document.getElementById("canvas")!!)
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renderer.start(document.getElementById("canvas")!!)
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println("started")
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println("started")
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@ -53,7 +72,7 @@ class ThreeDemoApp : ApplicationBase() {
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// point(-50, -50, 50)
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// point(-50, -50, 50)
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// point(-50, 50, 50)
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// point(-50, 50, 50)
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// }
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// }
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gdml {
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jsRoot {
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y = 110.0
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y = 110.0
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shape = box(50, 50, 50)
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shape = box(50, 50, 50)
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}
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}
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@ -0,0 +1,100 @@
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package hep.dataforge.vis.spatial
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import hep.dataforge.meta.boolean
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import hep.dataforge.provider.Type
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import hep.dataforge.vis.DisplayObject
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import hep.dataforge.vis.get
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import hep.dataforge.vis.onChange
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import hep.dataforge.vis.spatial.ThreeFactory.Companion.TYPE
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import hep.dataforge.vis.spatial.ThreeFactory.Companion.buildMesh
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import hep.dataforge.vis.spatial.ThreeFactory.Companion.updateMesh
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import hep.dataforge.vis.spatial.three.ConvexGeometry
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import hep.dataforge.vis.spatial.three.EdgesGeometry
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import hep.dataforge.vis.spatial.three.euler
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import info.laht.threekt.core.BufferGeometry
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import info.laht.threekt.core.Object3D
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import info.laht.threekt.geometries.BoxBufferGeometry
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import info.laht.threekt.geometries.WireframeGeometry
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import info.laht.threekt.math.Vector3
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import info.laht.threekt.objects.LineSegments
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import info.laht.threekt.objects.Mesh
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import kotlin.reflect.KClass
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internal val DisplayObject.material get() = this["color"].material()
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/**
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* Builder and updater for three.js object
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*/
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@Type(TYPE)
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interface ThreeFactory<T : DisplayObject> {
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val type: KClass<out T>
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operator fun invoke(obj: T): Object3D
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companion object {
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const val TYPE = "threeFactory"
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/**
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* Update position, rotation and visibility
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*/
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internal fun updatePosition(obj: DisplayObject, target: Object3D) {
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target.apply {
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position.set(obj.x, obj.y, obj.z)
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setRotationFromEuler(obj.euler)
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scale.set(obj.scaleX, obj.scaleY, obj.scaleZ)
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visible = obj.visible
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}
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}
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internal fun buildMesh(obj: DisplayObject, geometry: BufferGeometry): Mesh {
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val mesh = Mesh(geometry, obj.material)
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if (obj["edges.enabled"]?.boolean != false) {
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val material = obj["edges.material"]?.material() ?: Materials.DEFAULT
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mesh.add(LineSegments(EdgesGeometry(mesh.geometry as BufferGeometry), material))
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}
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if (obj["wireframe.enabled"]?.boolean == true) {
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val material = obj["edges.material"]?.material() ?: Materials.DEFAULT
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mesh.add(LineSegments(WireframeGeometry(mesh.geometry as BufferGeometry), material))
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}
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return mesh
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}
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internal fun updateMesh(obj: DisplayObject, geometry: BufferGeometry, mesh: Mesh) {
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mesh.geometry = geometry
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mesh.material = obj.material
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}
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}
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}
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abstract class MeshThreeFactory<T : DisplayObject>(override val type: KClass<out T>) : ThreeFactory<T> {
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/**
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* Build an object
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*/
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abstract fun buildGeometry(obj: T): BufferGeometry
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override fun invoke(obj: T): Mesh {
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val geometry = buildGeometry(obj)
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val mesh = buildMesh(obj, geometry)
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ThreeFactory.updatePosition(obj, mesh)
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obj.onChange(this) { _, _, _ ->
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ThreeFactory.updatePosition(obj, mesh)
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updateMesh(obj, buildGeometry(obj), mesh)
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}
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return mesh
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}
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}
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object ThreeBoxFactory : MeshThreeFactory<Box>(Box::class) {
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override fun buildGeometry(obj: Box) =
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BoxBufferGeometry(obj.xSize, obj.ySize, obj.zSize)
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}
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fun Point3D.asVector(): Vector3 = this.asDynamic() as Vector3
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object ThreeConvexFactory : MeshThreeFactory<Convex>(Convex::class) {
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override fun buildGeometry(obj: Convex) =
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ConvexGeometry(obj.points.map { it.asVector() }.toTypedArray())
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}
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@ -1,87 +0,0 @@
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package hep.dataforge.vis.spatial
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import hep.dataforge.vis.DisplayObject
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import hep.dataforge.vis.get
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import hep.dataforge.vis.onChange
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import hep.dataforge.vis.spatial.three.ConvexGeometry
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import hep.dataforge.vis.spatial.three.EdgesGeometry
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import hep.dataforge.vis.spatial.three.euler
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import info.laht.threekt.core.Object3D
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import info.laht.threekt.geometries.BoxBufferGeometry
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import info.laht.threekt.math.Vector3
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import info.laht.threekt.objects.LineSegments
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import info.laht.threekt.objects.Mesh
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/**
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* Builder and updater for three.js object
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*/
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interface ThreeObjectBuilder<in T : DisplayObject> {
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operator fun invoke(obj: T): Object3D
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companion object {
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/**
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* Update position, rotation and visibility
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*/
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internal fun updatePosition(obj: DisplayObject, target: Object3D) {
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target.apply {
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position.set(obj.x, obj.y, obj.z)
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setRotationFromEuler(obj.euler)
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scale.set(obj.scaleX, obj.scaleY, obj.scaleZ)
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visible = obj.visible
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}
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}
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}
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}
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abstract class GenericThreeBuilder<in T : DisplayObject, R : Object3D> : ThreeObjectBuilder<T> {
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/**
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* Build an object
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*/
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abstract fun build(obj: T): R
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/**
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* Update an object
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*/
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abstract fun update(obj: T, target: R)
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override fun invoke(obj: T): R {
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val target = build(obj)
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ThreeObjectBuilder.updatePosition(obj, target)
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obj.onChange(this) { _, _, _ ->
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ThreeObjectBuilder.updatePosition(obj, target)
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update(obj, target)
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}
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return target
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}
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}
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object ThreeBoxBuilder : GenericThreeBuilder<Box, Mesh>() {
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override fun build(obj: Box): Mesh {
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val geometry = BoxBufferGeometry(obj.xSize, obj.ySize, obj.zSize)
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return Mesh(geometry, obj["color"].material()).also { mesh ->
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mesh.add(LineSegments(EdgesGeometry(geometry), Materials.DEFAULT))
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}
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}
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override fun update(obj: Box, target: Mesh) {
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target.geometry = BoxBufferGeometry(obj.xSize, obj.ySize, obj.zSize)
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target.material = obj["color"].material()
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}
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}
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fun Point3D.asVector(): Vector3 = this.asDynamic() as Vector3
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object ThreeConvexBuilder: GenericThreeBuilder<Convex,Mesh>(){
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override fun build(obj: Convex): Mesh {
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val geometry = ConvexGeometry(obj.points.map { it.asVector() }.toTypedArray())
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return Mesh(geometry, obj["color"].material()).also { mesh ->
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mesh.add(LineSegments(EdgesGeometry(geometry), Materials.DEFAULT))
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}
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}
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override fun update(obj: Convex, target: Mesh) {
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target.geometry = ConvexGeometry(obj.points.map { it.asVector() }.toTypedArray())
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target.material = obj["color"].material()
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}
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}
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@ -1,12 +1,11 @@
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package hep.dataforge.vis.spatial
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package hep.dataforge.vis.spatial
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import hep.dataforge.context.Context
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import hep.dataforge.context.Context
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import hep.dataforge.io.Output
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import hep.dataforge.context.members
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import hep.dataforge.meta.Meta
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import hep.dataforge.meta.Meta
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import hep.dataforge.output.Output
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import hep.dataforge.vis.DisplayGroup
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import hep.dataforge.vis.DisplayGroup
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import hep.dataforge.vis.DisplayObject
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import hep.dataforge.vis.DisplayObject
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import hep.dataforge.vis.spatial.gdml.GDMLObject
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import hep.dataforge.vis.spatial.gdml.ThreeGDMLBuilder
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import hep.dataforge.vis.spatial.three.Group
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import hep.dataforge.vis.spatial.three.Group
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import info.laht.threekt.WebGLRenderer
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import info.laht.threekt.WebGLRenderer
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import info.laht.threekt.cameras.PerspectiveCamera
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import info.laht.threekt.cameras.PerspectiveCamera
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@ -17,6 +16,7 @@ import info.laht.threekt.math.ColorConstants
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import info.laht.threekt.scenes.Scene
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import info.laht.threekt.scenes.Scene
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import org.w3c.dom.Element
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import org.w3c.dom.Element
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import kotlin.browser.window
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import kotlin.browser.window
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import kotlin.reflect.KClass
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class ThreeOutput(override val context: Context) : Output<DisplayObject> {
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class ThreeOutput(override val context: Context) : Output<DisplayObject> {
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@ -65,15 +65,19 @@ class ThreeOutput(override val context: Context) : Output<DisplayObject> {
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private fun buildNode(obj: DisplayObject): Object3D? {
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private fun buildNode(obj: DisplayObject): Object3D? {
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return when (obj) {
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return when (obj) {
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is DisplayGroup -> Group(obj.children.mapNotNull { buildNode(it) }).apply {
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is DisplayGroup -> Group(obj.children.mapNotNull { buildNode(it) }).apply {
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ThreeObjectBuilder.updatePosition(obj, this)
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ThreeFactory.updatePosition(obj, this)
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}
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}
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is Box -> ThreeBoxBuilder(obj)
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//is Box -> ThreeBoxFactory(obj)
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is GDMLObject -> ThreeGDMLBuilder(obj)
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//is JSRootObject -> ThreeJSRootFactory(obj)
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//is Convex -> ThreeConvexBuilder(obj)
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//is Convex -> ThreeConvexFactory(obj)
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else -> null
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else -> findFactory(obj::class)?.invoke(obj)?: error("Factory not found")
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}
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}
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}
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}
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private fun <T : DisplayObject> findFactory(type: KClass<out T>): ThreeFactory<T>? {
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return context.members<ThreeFactory<*>>(ThreeFactory.TYPE).find { it.type == type } as? ThreeFactory<T>?
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}
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override fun render(obj: DisplayObject, meta: Meta) {
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override fun render(obj: DisplayObject, meta: Meta) {
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buildNode(obj)?.let {
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buildNode(obj)?.let {
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scene.add(it)
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scene.add(it)
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@ -0,0 +1,38 @@
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package hep.dataforge.vis.spatial
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|
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import hep.dataforge.context.AbstractPlugin
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import hep.dataforge.context.PluginFactory
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import hep.dataforge.context.PluginTag
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import hep.dataforge.names.Name
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import hep.dataforge.names.toName
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|
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class ThreePlugin : AbstractPlugin() {
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override val tag: PluginTag get() = ThreePlugin.tag
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|
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val factories = HashMap<Name, ThreeFactory<*>>()
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init {
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factories["box".toName()] = ThreeBoxFactory
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factories["convex".toName()] = ThreeConvexFactory
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}
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|
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override fun listTop(target: String): Sequence<Name> {
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return when (target) {
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ThreeFactory.TYPE -> factories.keys.asSequence()
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else -> return super.listTop(target)
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}
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}
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|
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override fun provideTop(target: String, name: Name): Any? {
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return when (target) {
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ThreeFactory.TYPE -> factories[name]
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else -> return super.provideTop(target, name)
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}
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}
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|
|
||||||
|
companion object : PluginFactory<ThreePlugin> {
|
||||||
|
override val tag = PluginTag("vis.three", "hep.dataforge")
|
||||||
|
override val type = ThreePlugin::class
|
||||||
|
override fun build() = ThreePlugin()
|
||||||
|
}
|
||||||
|
}
|
@ -1,7 +0,0 @@
|
|||||||
@file:JsModule("JSRootGeoBase.js")
|
|
||||||
@file:JsNonModule
|
|
||||||
package hep.dataforge.vis.spatial.gdml
|
|
||||||
|
|
||||||
import info.laht.threekt.core.Geometry
|
|
||||||
|
|
||||||
external fun createGeometry(shape: dynamic, limit: Int): Geometry
|
|
@ -0,0 +1,8 @@
|
|||||||
|
@file:JsModule("JSRootGeoBase.js")
|
||||||
|
@file:JsNonModule
|
||||||
|
|
||||||
|
package hep.dataforge.vis.spatial.jsroot
|
||||||
|
|
||||||
|
import info.laht.threekt.core.BufferGeometry
|
||||||
|
|
||||||
|
external fun createGeometry(shape: dynamic, limit: Int): BufferGeometry
|
@ -1,18 +1,14 @@
|
|||||||
package hep.dataforge.vis.spatial.gdml
|
package hep.dataforge.vis.spatial.jsroot
|
||||||
|
|
||||||
import hep.dataforge.meta.EmptyMeta
|
import hep.dataforge.meta.EmptyMeta
|
||||||
import hep.dataforge.meta.Meta
|
import hep.dataforge.meta.Meta
|
||||||
import hep.dataforge.meta.MetaItem
|
import hep.dataforge.meta.MetaItem
|
||||||
import hep.dataforge.meta.buildMeta
|
import hep.dataforge.meta.buildMeta
|
||||||
import hep.dataforge.vis.*
|
import hep.dataforge.vis.*
|
||||||
import hep.dataforge.vis.spatial.GenericThreeBuilder
|
import hep.dataforge.vis.spatial.MeshThreeFactory
|
||||||
import hep.dataforge.vis.spatial.Materials
|
import info.laht.threekt.core.BufferGeometry
|
||||||
import hep.dataforge.vis.spatial.material
|
|
||||||
import hep.dataforge.vis.spatial.three.EdgesGeometry
|
|
||||||
import info.laht.threekt.objects.LineSegments
|
|
||||||
import info.laht.threekt.objects.Mesh
|
|
||||||
|
|
||||||
class GDMLObject(parent: DisplayObject?, meta: Meta) : DisplayLeaf(parent, TYPE, meta) {
|
class JSRootObject(parent: DisplayObject?, meta: Meta) : DisplayLeaf(parent, TYPE, meta) {
|
||||||
|
|
||||||
var shape by node()
|
var shape by node()
|
||||||
|
|
||||||
@ -45,6 +41,9 @@ class GDMLObject(parent: DisplayObject?, meta: Meta) : DisplayLeaf(parent, TYPE,
|
|||||||
"fNode._typename" to "TGeoSubtraction"
|
"fNode._typename" to "TGeoSubtraction"
|
||||||
}
|
}
|
||||||
|
|
||||||
|
/**
|
||||||
|
* Intersect two GDML geometries
|
||||||
|
*/
|
||||||
infix fun Meta.intersect(other: Meta) = buildMeta {
|
infix fun Meta.intersect(other: Meta) = buildMeta {
|
||||||
"fNode.fLeft" to this
|
"fNode.fLeft" to this
|
||||||
"fNode.fRight" to other
|
"fNode.fRight" to other
|
||||||
@ -52,13 +51,12 @@ class GDMLObject(parent: DisplayObject?, meta: Meta) : DisplayLeaf(parent, TYPE,
|
|||||||
}
|
}
|
||||||
|
|
||||||
companion object {
|
companion object {
|
||||||
const val TYPE = "geometry.spatial.gdml"
|
const val TYPE = "geometry.spatial.jsRoot"
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
//TODO add Zelenyy GDML builder here
|
fun DisplayGroup.jsRoot(meta: Meta = EmptyMeta, action: JSRootObject.() -> Unit = {}) =
|
||||||
fun DisplayGroup.gdml(meta: Meta = EmptyMeta, action: GDMLObject.() -> Unit = {}) =
|
JSRootObject(this, meta).apply(action).also { addChild(it) }
|
||||||
GDMLObject(this, meta).apply(action).also { addChild(it) }
|
|
||||||
|
|
||||||
fun Meta.toDynamic(): dynamic {
|
fun Meta.toDynamic(): dynamic {
|
||||||
fun MetaItem<*>.toDynamic(): dynamic = when (this) {
|
fun MetaItem<*>.toDynamic(): dynamic = when (this) {
|
||||||
@ -78,19 +76,9 @@ fun Meta.toDynamic(): dynamic {
|
|||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
object ThreeGDMLBuilder : GenericThreeBuilder<GDMLObject, Mesh>() {
|
object ThreeJSRootFactory : MeshThreeFactory<JSRootObject>(JSRootObject::class) {
|
||||||
override fun build(obj: GDMLObject): Mesh {
|
override fun buildGeometry(obj: JSRootObject): BufferGeometry {
|
||||||
val shapeMeta = obj.shape?.toDynamic() ?: error("The shape not defined")
|
val shapeMeta = obj.shape?.toDynamic() ?: error("The shape not defined")
|
||||||
println(shapeMeta)
|
return createGeometry(shapeMeta, obj.facesLimit)
|
||||||
val geometry = createGeometry(shapeMeta, obj.facesLimit)
|
|
||||||
return Mesh(geometry, obj.color.material()).also { mesh ->
|
|
||||||
mesh.add(LineSegments(EdgesGeometry(geometry), Materials.DEFAULT))
|
|
||||||
}
|
|
||||||
}
|
|
||||||
|
|
||||||
override fun update(obj: GDMLObject, target: Mesh) {
|
|
||||||
val shapeMeta: dynamic = obj.shape?.toDynamic()
|
|
||||||
target.geometry = createGeometry(shapeMeta, obj.facesLimit)
|
|
||||||
target.material = obj.color.material()
|
|
||||||
}
|
}
|
||||||
}
|
}
|
@ -0,0 +1,25 @@
|
|||||||
|
package hep.dataforge.vis.spatial.jsroot
|
||||||
|
|
||||||
|
import hep.dataforge.context.AbstractPlugin
|
||||||
|
import hep.dataforge.context.Context
|
||||||
|
import hep.dataforge.context.PluginFactory
|
||||||
|
import hep.dataforge.context.PluginTag
|
||||||
|
import hep.dataforge.names.toName
|
||||||
|
import hep.dataforge.vis.spatial.ThreePlugin
|
||||||
|
|
||||||
|
class JSRootPlugin : AbstractPlugin() {
|
||||||
|
override val tag: PluginTag get() = JSRootPlugin.tag
|
||||||
|
|
||||||
|
override fun dependsOn() = listOf(ThreePlugin)
|
||||||
|
|
||||||
|
override fun attach(context: Context) {
|
||||||
|
super.attach(context)
|
||||||
|
context.plugins.get<ThreePlugin>()?.factories?.set("ThreeJSRootFactory".toName(), ThreeJSRootFactory)
|
||||||
|
}
|
||||||
|
|
||||||
|
companion object: PluginFactory<JSRootPlugin> {
|
||||||
|
override val tag = PluginTag("vis.jsroot", "hep.dataforge")
|
||||||
|
override val type = JSRootPlugin::class
|
||||||
|
override fun build() = JSRootPlugin()
|
||||||
|
}
|
||||||
|
}
|
@ -15,7 +15,7 @@ class Box(parent: DisplayObject?, meta: Meta) : DisplayLeaf(parent, TYPE, meta)
|
|||||||
//TODO add helper for color configuration
|
//TODO add helper for color configuration
|
||||||
|
|
||||||
companion object {
|
companion object {
|
||||||
const val TYPE = "geometry.spatial.box"
|
const val TYPE = "geometry.3d.box"
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
|
@ -11,7 +11,7 @@ class Convex(parent: DisplayObject?, meta: Meta) : DisplayLeaf(parent, TYPE, met
|
|||||||
val points = points(properties["points"] ?: error("Vertices not defined"))
|
val points = points(properties["points"] ?: error("Vertices not defined"))
|
||||||
|
|
||||||
companion object {
|
companion object {
|
||||||
const val TYPE = "geometry.spatial.convex"
|
const val TYPE = "geometry.3d.convex"
|
||||||
|
|
||||||
fun points(item: MetaItem<*>): List<Point3D> {
|
fun points(item: MetaItem<*>): List<Point3D> {
|
||||||
return item.node?.getAll("point".toName())?.map { (_, value) ->
|
return item.node?.getAll("point".toName())?.map { (_, value) ->
|
||||||
|
@ -11,7 +11,7 @@ class Extruded(parent: DisplayObject?, meta: Meta) : DisplayLeaf(parent, TYPE, m
|
|||||||
val shape get() = shape(properties["shape"] ?: error("Shape not defined"))
|
val shape get() = shape(properties["shape"] ?: error("Shape not defined"))
|
||||||
|
|
||||||
companion object {
|
companion object {
|
||||||
const val TYPE = "geometry.spatial.extruded"
|
const val TYPE = "geometry.3d.extruded"
|
||||||
|
|
||||||
fun shape(item: MetaItem<*>): Shape2D {
|
fun shape(item: MetaItem<*>): Shape2D {
|
||||||
return item.node?.getAll("xyPoint".toName())?.map { (_, value) ->
|
return item.node?.getAll("xyPoint".toName())?.map { (_, value) ->
|
||||||
|
@ -1,7 +1,7 @@
|
|||||||
package hep.dataforge.vis.spatial
|
package hep.dataforge.vis.spatial
|
||||||
|
|
||||||
import hep.dataforge.io.Output
|
|
||||||
import hep.dataforge.meta.*
|
import hep.dataforge.meta.*
|
||||||
|
import hep.dataforge.output.Output
|
||||||
import hep.dataforge.vis.DisplayGroup
|
import hep.dataforge.vis.DisplayGroup
|
||||||
import hep.dataforge.vis.DisplayNode
|
import hep.dataforge.vis.DisplayNode
|
||||||
import hep.dataforge.vis.DisplayObject
|
import hep.dataforge.vis.DisplayObject
|
||||||
|
Loading…
Reference in New Issue
Block a user